Shanghai, China
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Radar Level Meter, Radar Level Gauge, Level Meter manufacturer / supplier in China, offering Non-Contacting 6.3GHz Radar Level Meter (A+E 60L), Non Contact Radar Level Transmitter, 3mm Random Error Radar Level Sensor (A+E 62LB) and so on.

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Non-Contacting 6.3GHz Radar Level Meter (A+E 60L)

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Min. Order / Reference FOB Price
1 Piece US $700/ Piece
Port: Shanghai, China
Production Capacity: 5000pieces/Year
Payment Terms: L/C, T/T
Principle: Vibration Sensor
Range: 0-20m
Measurement Accuracy: ±8mm
Accuracy: 0.2%
Kind: Radar
Structure: All in One

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Basic Info

Model NO.: A+E 60L
Warranty: 1 Year
Certification: CE
Material: SS304
Process Temperature: -40~250℃
Frequency Range: 6.3GHz
Dead Zone: 0.5m
Power Supply: 24VDC or 220VAC
Signal Output: 4-20mA with Hart
Conduit / Cable Thread: M20*1.5 or 1/2 NPT
Antenna: Rod or Bellmouth
Installation: Flange or Thread
Protection: IP68
Ex-Proof: Exd II Bt4
Housing: Alumnium or Plastic
Trademark: AEAD
Transport Package: Wooden Case, Carboard Box
Origin: Shanghai
HS Code: 90261000

Product Description

Non-Contacting 6.3GHz Radar Level Meter (A+E 60L)
A+E 60L radar level meter is an advanced radar level measurement instrument, the maximum measuring distance of which is 35 meter. These meter can be used for solid level measuring of storage tanks, buffer tanks, process containers, and various stock bins, outputing 4 ... 20mA analog signal.
Measurement Principle
High frequency microwave pulses are transmitted and received through the antenna system, radar wave runs at the speed of light, the running time of which can be converted into a level signal through electronic parts. A special kind of time-extending method will ensure the stable and precise measurement. Even if working conditions are comparatively complex and false echoes exist, we can still indentify the echo wave of material level through the latest micro-processing technology and debugging software.
Non-Contacting 6.3GHz Radar Level Meter (A+E 60L)

The antenna system receives the reflected microwave pulse and transmits it to the electronic circuit. The micro-processor will process the signal, and identify the echo wave generated on the material level surface. The correct identification of echo wave is completed by intellectual software, the precision of which can reach millimeter-level. The distance D to material surface is in direct proportion to time-stroke T of impulse:      
D=C×T/2                                                                                                                                 (where, C indicates velocity of light).                                                                                           As the empty tank distance E is already known, the material level L is:                                             L=E-D

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